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QTZWNAP1200B2.4 GHz 802.11 Access Point

Airespace
2.4 GHz 802.11 Access Point - FCC ID QTZWNAP1200B - Airespace
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Apr 21, 2003
Application Purpose
Original Equipment
Date of Application
Apr 21, 2003
Equipment Note
2.4 GHz 802.11 Access Point
Frequency Range
2412.00000000 - 2462.00000000
Company
Airespace
Country
United States

Documents & Files

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Users Manual

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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Operational Description

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RF Exposure Info

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Test Report

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Test Setup Photos

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Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

3/18/03Copyright © 2003, Airespace, Inc. All Rights Reserved. Airespace AP 802.11a Radio Card Quick Installation Guide Airespace AP 802.11a Radio Card Quick Instal- lation Guide System Release 1.1 Overview This guide is designed to provide professional installers with the information needed to install an Airespace AP 802.11a Radio Card in a 1200B Airespace Access Point to create a 1200AB Airespace Access Point. WARNING: DO NOT attempt to install the Airespace AP 802.11a Radio Card if you are not a professional installer certified by Airespace, Inc. to perform this installation. If you perform this installation without Airespace, Inc. certification, you will void the FCC certification for the resulting 1200AB Airespace AP, and will be in violation of FCC regula- tions. (See FCC Statements for Airespace AP in the Airespace Product Guide for additional information.) The following figure shows a typical 802.11a Radio Card. Figure - Typical Airespace AP 802.11a Radio Card Continue with Step 1: Collecting Required Tools and Materials. 3/18/03Step 1: Collecting Required Tools and Materials2 Step 1: Collecting Required Tools and Materials Step 1: Collecting Required Tools and Materials •Airespace AP 802.11a Radio Card kit -- includes 802.11a Radio Card and replacement FCC label. •Correct Security Torx screwdriver (exact size to be determined). •1200B Airespace Access Point to be upgraded to a 1200AB Access Point. See Airespace AP Models for more information. •A power source for the Airespace AP: -Either an Airespace AP External Power Converter, or -A connection from an 802.3af-compliant Power Over Ethernet device. •A separate WiFi-approved device (such as Air Magnet) used to detect and verify 802.11a transmissions. Continue with Step 2: Setting up an ESD Workspace. 3/18/03Step 2: Setting up an ESD Workspace3 Step 2: Setting up an ESD Workspace Step 2: Setting up an ESD Workspace You need an Electrostatic Discharge (ESD) workspace to complete this instal- lation. Because the 802.11a Radio Card is very sensitive to electrostatic discharge, you can destroy it by not following ESD procedures. Caution: DO NOT attempt to install the Airespace AP 802.11a Radio Card if you do not have an ESD workplace, or you may destroy the 802.11a Radio Card. Continue with Step 3: Opening the Airespace AP Case. 3/18/03Step 3: Opening the Airespace AP Case4 Step 3: Opening the Airespace AP Case Step 3: Opening the Airespace AP Case •If necessary, remove any brackets and/or mounting bases from the bottom of the Airespace AP. •Use your Security Torx screwdriver to remove the two screws securing the Airespace AP door. Save the two screws for later reuse. Figure - Airespace AP Screw Locations 3/18/03Step 3: Opening the Airespace AP Case5 •Remove the Airespace AP door. Note that the 1200B has two RF cable ends taped to the inside of the case, one labeled “1” and the other labeled “2”. •Remove the tape to release the two RF cable ends. Figure - Airespace AP with Door Removed Continue with Step 4: Installing the 802.11a Radio Card. 3/18/03Step 4: Installing the 802.11a Radio Card6 Step 4: Installing the 802.11a Radio Card Step 4: Installing the 802.11a Radio Card •Take a moment to ensure that your ESD workspace is secure: wrist strap, desktop mat, floormat and/or heel strap properly grounded. Caution: Even if you are working at an ESD workspace, you can still damage the 802.11a Radio Card. Make sure you pick up the 802.11a Radio Card by the edges as shown in the following figure, and do not touch the connector fingers. Figure - Holding the 802.11 Radio Card by the Edges •Remove the 802.11a Radio Card from its kit and position the card on the edge of the Airespace AP case as shown in the previous figure. 3/18/03Step 4: Installing the 802.11a Radio Card7 •While holding the 802.11a Radio Card on the edge of the Airespace AP, gently snap the RF cable labeled “1” onto the RF connector nearest the corner of the 802.11a Radio Card. When you are done, the assembly should look as follows: Figure - 802.11a Radio Card with RF Cable "1" Attached 3/18/03Step 4: Installing the 802.11a Radio Card8 •Rotate the AP 802.11a Radio Card and position the card on the middle of the Airespace AP case as shown in the next figure. •While holding the 802.11a Radio Card on the middle of the Airespace AP, gently snap the RF cable labeled “2” onto the RF connector nearest the center of the 802.11a Radio Card. •When you are done, the assembly should look as follows: Figure - 802.11a Radio Card with RF Cables "1" and "2" Attached 3/18/03Step 4: Installing the 802.11a Radio Card9 •Carefully rotate the 802.11a Radio Card as shown in the following figure. •Make sure the RF cables are not pinched under the 802.11a Radio Card (small arrow). •Position the 802.11a Radio Card against its mating connector at a shallow angle (large arrow). •Gently press the 802.11a Radio Card all the way into its mating connector until it bottoms out in the connector (large arrow). Figure - Positioning the 802.11a Radio Card in the Airespace AP Case 3/18/03Step 4: Installing the 802.11a Radio Card10 •When you are done, make sure the RF cables are not pinched, and gently snap the 802.11a Radio Card into its retaining detents as shown in the next figure. Figure - Gently Snapping the 802.11a Radio Card into its Retaining Detents 3/18/03Step 4: Installing the 802.11a Radio Card11 •When you are done, the 802.11a Radio Card is secured in its retaining detents as shown in the following figure. Figure - 802.11a Radio Card Installed in the Airespace AP Case You have installed the 802.11a Radio Card in the Airspace AP. Continue with Step 5: Verifying 802.11a Operation. 3/18/03Step 5: Verifying 802.11a Operation12 Step 5: Verifying 802.11a Operation Step 5: Verifying 802.11a Operation You have added 802.11a functionality to a 1200B Airespace AP. Perform the following to verify correct 802.11a operation. •Enable the Site Survey function by placing the factory-supplied jumper across both of the Si…

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Users Manual

Copyright © 2003 Airespace, Inc. All Rights Reserved. 1 Airspace Access Point (AP) Installation Guide Airespace System 1.0: March 17, 2003 Airespace, Inc. 110 Nortech Parkway San Jose, CA 95134 1-408-635-2000 www.airespace.com Copyright © 2003 Airespace, Inc. All Rights Reserved. 2 Legal Information Disclaimer Airespace™ and Airespace AP™ are trademarks of Airespace, Inc. All other trademarks, service marks, and product names used in this document are the property of their respective owners. U.S.A. Government Restricted Rights (tbd) Applicable Laws (tbd) Copyright © 2003 Airespace, Inc. All Rights Reserved. 3 FCC Statements This equipment has been tested and found to comply with the limits for a Class A digital device, pursuant to Part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference when the equipment is operated in a commercial environment. This equipment generates, uses, and can radiate radio frequency energy and, if not installed and used in accordance with the instruction manual, may cause harmful interference to radio communications. Operation of this equipment in a residential area is likely to cause harmful interference in which case the user will be required to correct the interference at his own expense. RF Radiation Hazard Warning To ensure compliance with FCC RF exposure requirements, this device must be installed in a location such that the antenna of the device will be greater than 20 cm (8 in.) from all persons. Using higher gain antennas and types of antennas not covered under the FCC certification of this product is not allowed. Note: No 802.11a external antennas are currently certified or available in this release. Contact Airespace, Inc. for a list of FCC-approved 802.11b external antennas. Installers of the radio and end users of the system must adhere to the installation instructions provided in this manual. Non-Modification Statement Use only the supplied internal antenna, or external antennas supplied by the manufacturer. Unauthorized antennas, modifications, or attachments could damage the badge and could violate FCC regulations and void the user’s authority to operate the equipment. Copyright © 2003 Airspace, Inc. All Rights Reserved. 4 Table of Contents Airspace Access Point (AP) Installation Guide 1 Legal Information 2 Disclaimer 2 Trademarks and Service Marks 2 U.S.A. Government Restricted Rights 2 Applicable Laws 2 FCC Statements 3 RF Radiation Hazard Warning 3 Non-Modification Statement 3 Table of Contents 4 About this Guide 5 About the Airespace Access Point 6 About Airespace AP Models and Upgrade Card 9 About the Airespace AP 802.11a Radio Card 10 About Internal and External Airespace AP Antennas 11 About Airespace AP LEDs 12 About Airespace AP Connectors 13 About Airespace AP Physical Security 14 About Power Over Ethernet 15 Installing Airespace APs 16 Planning Airespace AP Locations 17 Mounting Airespace APs 18 Copyright © 2003 Airespace, Inc. All Rights Reserved. 5 About this Guide The Airespace Access Point (AP) Installation Guide allows installation planners, network administrators, and installers to work together to install Airespace APs in a target environment. Refer to the following sections for more information about the Airespace AP. Copyright © 2003 Airespace, Inc. All Rights Reserved. 6 About the Airespace Access Point The Airespace AP is a part of the innovative Airespace System. When associated with an Airespace 4000 Switch as shown in the following figure, the Airespace AP provides advanced 802.11a and/or 802.11b AP functions in a single sleek enclosure, including unmatched scalability and security solutions for enterprises and Wireless ISPs. In the Airespace System, most of the processing power is removed from a traditional AP to the Airespace Switch. Airespace Switch and APs Copyright © 2003 Airspace, Inc. All Rights Reserved. 7 The following figure shows an Airespace AP with the optional ceiling mount base. Airespace AP with Ceiling Mount Base Refer to the following for more information on Airespace APs: • Airespace AP Models • Airespace AP 802.11a Radio Cards • Internal and External Airespace AP Antennas • About Ethernet Cabling • Airespace AP LEDs • Airespace AP Connectors • Airespace AP Power Requirements • Airespace AP External Power Converter • About Power Over Ethernet (PoE) • Airespace AP Physical Security • Airespace AP Automatic Software Upgrades • Airespace AP Specifications • Installing Airespace APs Copyright © 2003 Airspace, Inc. All Rights Reserved. 8 Copyright © 2003 Airespace, Inc. All Rights Reserved. 9 About Airespace AP Models and Upgrade Card The Airespace AP includes one 802.11a radio (1200A), one 802.11b radio (1200B), or one 802.11a and one 802.11b radio (1200AB). As an added feature, the 1200B Airespace AP can be updated by the customer with an 802.11a radio, allowing for current 802.11b coverage and future 802.11a coverage by the same Airespace AP. Refer to the Airespace AP 802.11a Radio Card section for information on the field-installable radio that adds 802.11a capability to an existing 802.11b Airespace AP. The Airespace AP comes in the following configurations: • Model 1200A - Airespace AP with one 802.11a radio and two high-gain internal antennas • Model 1200B - Airespace AP with one 802.11b radio and four high-gain internal antennas; can be upgraded to a 1200AB by adding an 802.11a Radio Card • Model 1200AB - Airespace AP with one 802.11a and one 802.11b radio and four high-gain internal antennas The following upgrade card is also available: • 802.11a Radio Card -Professionalinstallers can add this card to a 1200B to create a 1200AB Airespace AP The Airespace AP is shipped with a color-coordinated ceiling mount base, and projection and flush wall mount brackets. These brackets and base allow quick mounting to ceiling, wall or pole: • Ceiling Mounting Kit - Allows you to mount the Airespace AP on any horizontal surface • Flush Wall Mount Kit - Allow…

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Cover Letter(s)

To: Mr. Tim Johnson, American TCB From: David Waitt, Airespace Subject: Inquiries regarding Certification application for FCC ID QTZWNAP1200B Date: 14 April 2003 Tim, Below are the replies to your inquiries regarding this application. The answers are numbered corresponding to your inquiries in your letter dated 14 April 2003. If something is unclear, or if you have additional concerns, please contact me. Best Regards, David Waitt Consultant representing Airespace ATCB 1: The internal photographs appear to show that 2 cards are internally installed, instead of just one as specified by this application. Please comment. Airespace: Photos of the 802.11 A/B version fo the radio were inadvertently uploaded with this application. Correct photos have been uploaded to the ATCB site. ATCB 2: The external photographs appear to show standard screws for the access door which contradicts the information given for the upgrade manual stating special Torx screws are used. Please comment. Airespace: There was a considerable lead time involved in getting the special security hardware. The hardware was not available when the testing was started or the pictures were taken. When production units begin to ship, they will incorporate the security hardware. ATCB 3: The FCC ID specified on the letter for labeling lists a different FCC ID. Please explain. Airespace: There was an error made when editing the document. A new letter has been uploaded. ATCB 4: The conducted emissions state that they device was tested from 150 kHz to 30 MHz using the new EN55022 harmonized limits. However, the limits specified are for the old limits. Additionally, results shown are only around 25-30 MHz. Please confirm the frequency range tested and the limits applied. Please correct as necessary. Airespace: The AC line conducted emissions test was performed from 150 kHz to 30 MHz. The 10 highest peaks for each line are indeed all between 25 and 30 MHz. Below 20 MHz the level of the emissions rolls off dramatically such that the level of the emissions from 150 kHz to 10 MHz are approximately 25 dB below those listed in the table Since there was one instance of the QP level being above the AVG limit, the report has been edited to both sets of data for the QP and AVG measurements ATCB 5 : Given that the device may accept an AC adapter or POE power, the AC line conducted emissions should be checked to determine which method of supplying power is worse case. Only one set of data appears to be provided. Please provide further information regarding whether both modes of providing power were checked to ensure the worse case results are provided. Airespace: When the device is powered from POE, it is receiving its power from an Airespace Ethernet switch. The Ethernet switch is rack mount device that has been tested and found to comply with FCC Class A requirements. The AC line conducted emissions DUE TO THE RADIO are indeed higher when the device is powered on the AC adapter than when the radio is powered by the Ethernet switch.. At some frequencies, the levels of the AC line conducted emissions are higher out of the Ethernet switch, however the levels of these emissions do not change noticeably with the connection (powering) of radio devices to the switch, therefore the AC line conducted emissions measured for the switch are due to the switch itself, and not the connection of radio(s). Connecting a radio to the AC adapter does change the level of AC emissions out of the adapter, therefore, these emissions are due to the presence of a radio. These are the results presented in the report. ATCB 6: Based on how information was presented in the report, the RF exposure calculations incorrectly take into consideration the RF switch. Please correct the RF exposure calculations (i.e. internal antennas should be EIRP of 23.3 dBm, external antennas were calculated correctly). Airespace: The initial MPE calculation had an error which has been corrected. A new MPE calculation has been uploaded. ATCB 7: Previous applications provided an attestation letter regarding the upgrade feature of this radio. Please provide a similar letter for this application. Airespace: A similar attestation letter has been uploaded to the ATCB site. ATCB 8: Since this is a 802.11B version product only, please remove reference to the 802.11A given on page 24 of 28 for the internal antennas and page 16 of 20 for the external antennas. Airespace: The references to 802.11 A have been removed. ATCB 9: The calculation given on page 25 of 28 is incorrect. Please correct. Airespace: The calculation has been corrected. A revised report has been uploaded to the ATCB site ATCB: 10 Are plots available for the bandedge measurements with the internal antenna? If so, please provide. Airespace: The plots have been appended to the test report. ATCB: 11 Please provide a justification for the device as a Class A device. Airespace: A document justifying the device as “Class A” has been uploaded to the ATCB site ATCB: 12 The upgrade guide mentions that only approved installers may upgrade the radio, but the users manual on page 9 of 20 mentions upgraded by the customer. Please explain. Airespace: The users guide has been corrected and uploaded to the ATCB site with this reply. ATCB: 13 Please provide additional close up photographs of the external antennas. Airespace: Additional close up pictures are contained within the document “External_2_4GHz_ant_data_pix.pdf”. This document was accidentally overlooked during the initial file upload. It has been uploaded to the ATCB site as part of this reply. ATCB: 14 The data sheets referenced in the test report for the external antennas do not appear to be provided. Please provide. Airespace: The data sheets are provided as the first few pages of the document “External_2_4GHz_ant_data_pix.pdf”. This document was accidentally overlooked during the initial file upload. It has been uploaded to the ATCB site as part of this reply.

Cover Letter(s)

To: Federal Communications Commission 7435 Oakland Mills Road Columbia, Maryland 21046 Subject: Authorization of David Waitt to act on our behalf and as our agent for preparation of FCC certification applications. Gentlemen, This is a letter of authorization to accept David Waitt, an independent consultant who’s services have been retained by Malibu Networks, Inc. to sign applications before the commission on our behalf, to make representations to you on our behalf and to receive and exchange data between our company and the Commission in connection with the certification of the following product(s): Airespace Virtual Access point Model 1200 Various Versions with the following FCC IDs FCC ID: QTZWNAP1200AB FCC ID: QTZWNAP1200A FCC ID: QTZWNAP1200B Under FCC Docket number 20780 and General Docket Number 80-284 pursuant to Part 15 of the FCC Rules and Regulations. If you have any further questions or need additional information, please feel free to contact me at [email protected] <Orig Signature on File> March 2003 Bob Friday Airespace, Date Sr. Scientist 110 Nortech Parkway San Jose, CA, 95134

Cover Letter(s)

To: Federal Communications Commission 7435 Oakland Mills Road Columbia, Maryland 21046 Subject: Confidentiality Request for Certification Application Gentlemen, On behalf of Airespace I request that the following documents associated with the Part 15 Certification application for FCC ID: QTZWNAP1200B be withheld from public disclosure per Section 0.459 of the FCC Rules. Any/All circuit schematics. Any/All electrical block diagrams Any/All parts lists This request is made under the provisions of Section 0.457(d) of the FCC rules and Sections 552(b)(4) of the Freedom of information Act. These Sections authorize withholding from public inspection, materials which would be privileged as a matter of law if retained by the person submitting them in addition to materials, which would not customarily be released to the public, by that person. If you have any questions, please do not hesitate to contact me at: [email protected] or (408) 832-7053 Sincerely, David Waitt Consultant representing Airespace 110 Nortech Parkway San Jose, CA, 95134

Cover Letter(s)

American Telecommunications Certification Body Inc. 6731 Whittier Ave, McLean, VA 22101 April 14, 2003 RE: Airespace FCC ID: QTZWNAP1200B I have a few comments on the above referenced Application. 1) The internal photographs appear to show that 2 cards are internally installed, instead of just one as specified by this application. Please comment. 2) The external photographs appear to show standard screws for the access door which contradicts the information given for the upgrade manual stating special Torx screws are used. Please comment. 3) The FCC ID specified on the letter for labeling lists a different FCC ID. Please explain. 4) The conducted emissions state that they device was tested from 150 kHz to 30 MHz using the new EN55022 harmonized limits. However, the limits specified are for the old limits. Additionally, results shown are only around 25-30 MHz. Please confirm the frequency range tested and the limits applied. Please correct as necessary. 5) Given that the device may accept an AC adapter or POE power, the AC line conducted emissions should be checked to determine which method of supplying power is worse case. Only one set of data appears to be provided. Please provide further information regarding whether both modes of providing power were checked to ensure the worse case results are provided. 6) Based on how information was presented in the report, the RF exposure calculations incorrectly take into consideration the RF switch. Please correct the RF exposure calculations (i.e. internal antennas should be EIRP of 23.3 dBm, external antennas were calculated correctly). 7) Previous applications provided an attestation letter regarding the upgrade feature of this radio. Please provide a similar letter for this application. 8) Since this is a 802.11B version product only, please remove reference to the 802.11A given on page 24 of 28 for the internal antennas and page 16 of 20 for the external antennas. 9) The calculation given on page 25 of 28 is incorrect. Please correct. 10) Are plots available for the bandedge measurements with the internal antenna? If so, please provide. 11) Please provide a justification for the device as a Class A device. 12) The upgrade guide mentions that only approved installers may upgrade the radio, but the users manual on page 9 of 20 mentions upgraded by the customer. Please explain. 13) Please provide additional close up photographs of the external antennas. 14) The data sheets referenced in the test report for the external antennas do not appear to be provided. Please provide. 15) Please call to discuss the bandedge measurements. Timothy R. Johnson Examining Engineer mailto: [email protected] The items indicated above must be submitted before processing can continue on the above referenced application. Failure to provide the requested information may result in application termination. Correspondence should be considered part of the permanent submission and may be viewed from the Internet after a Grant of Equipment Authorization is issued. Please do not respond to this correspondence using the email reply button. In order for your response to be processed expeditiously, you must submit your documents through the AmericanTCB.com website. Also, please note that partial responses increase processing time and should not be submitted. Any questions about the content of this correspondence should be directed to the sender.

External Photos

Addendum to EMI Test Report and Technical Documentation on Airespace Access Point. Model: 1200B FCC ID: QTZUSAP1200B 2.4 GHz External Antenna(s) Pictures and data sheets Prepared by: David Waitt 202 Calvert Drive #217 Cupertino, Ca. 95014 [email protected] (408) 832 7053 110 Nortech Parkway San Jose, California, 95134 Features: Specifications: Element Type Air-Loaded Patch Frequency Range 2400-2500 MHz Peak Gain 3 dBi Polarization 1 Linear Impedance 50 ohms Maximum Input Power 50 watts VSWR (Min. Performance) 1.5:1 Connector Customer Choice Dimensions (cm) 6.4 x 6.3 x 1.7 cm Housing Coating Material ABS Operating Temperature -40º to +70ºC Storage Temperature -40º to +70ºC Includes a low-loss, RG 142, plenum rated “pigtail” cable. 1 Contains both vertical and horizontal components, the ratio of which varies with the spatial location. Cables & Connectors: Part Number Cable Connector CAF94101 12” RG-142 Plenum Rated Coax SMA-Male CAF94170 12” RG-142 Plenum Rated Coax N-Female CAF94150 36” RG-142 Plenum Rated Coax RP-TNC CAF94144 36” RG-142 Plenum Rated Coax RP-TNC 2400 MHz Sphere Part Number (P/N): CAF94101 CAF94170 CAF94150 CAF94144 2400 MHz Sphere – 10/30/02 Omnidirectional Antenna ƒ Omnidirectional antenna provides a considerable gain improvement over traditional dipole antennas, within a remarkably small case that perfectly blends into any environment. ƒ It is particularly applicable in environments such as offices and hospitals, where aesthetics are critical to successful wireless deployment and wide angle coverage is necessary. ƒ For easy installation, the Sphere quickly attaches to a ceiling tile frame with a standard metal clip. Azimuth Plane Cut perpendicular to the antenna and perpendicular to the cable Elevation Plane Cut perpendicular to the antenna alon g the cable axis Omni Plane Cut in the plane of the antenna parallel to the cable Sphere 2400 Xertex Products Reliability Without the Expense... FEATURES & OPTIONS: In-Building Reliable coverage is always a priority in streamlining the effectiveness of wireless devices. This is especially crucial in commercial, office, campus and residential environments that strive to cover a multitude of users in an open space or long corridor. Centurion’s Whisper directional and Terrace bi-directional antennas offer an affordable option for in-building antenna systems. Our innovative designs blend into any atmosphere and provide excellent coverage in high traffic areas. WHI SPER - Directional Antenna • Self contained in a durable sleek radome, the Whisper is designed to blend in anywhere - residential, campus or commercial • Inexpensive yet reliable, the Whisper utilizes Centurion's patented technology to achieve maximum efficiency. • Typical applications include wireless local loop, in-building wireless (voice and data), WLAN, DECT, WPBX, and broadband Internet access. TERRACE - Bi-directional Antenna • Utilizes a patented low-profile design to provide coverage in corridors or long hallways • Provides outstanding performance in healthcare and office environments, where a long hallway presents a design or coverage challenge DIRECTIONAL/BI-DIRECTIONAL ANTENNAS AntennasA www.centurion.com Telematics 802.11/Bluetooth In-Building Mobile Phones LMR Power Specifications subject to change without notice Copyright © 2001 Centurion Wireless Technologies, Inc. All Rights Reserved www.centurion.com 3425 N.44th St., LINCOLN, NE 68504 USA SALES PHONE 800.228.4563 • SALES FAX 800.826.3774 INTERNATIONAL PHONE 402.474.0706 • FAX 402.467.4528 In-Building DIRECTIONAL/BI-DIRECTIONAL ANTENNAS All centurion products are designed for maximum efficiency and are customizable and scalable to meet your frequency and application requirements. SPECIFICATIONS: PATTERNS: As displayed in these typical patterns, In-Building Directional and Bi- Directional antennas offer superior high-gain reception over a broad area. General specifications for In-Building Directional and Bi-Directional Antennas: ELEMENT TYPE Air-Loaded Patch FREQUENCY RANGE 806-2500 MHz PEAK GAIN 5.0-9.0 dBi POLARIZATION 1 Linear IMPEDANCE 50 ohms MAXIMUM INPUT POWER 50 watts FRONT/BACK RATIO 18-20 dBi VSWR (MIN. PERFORMANCE) 1.5:1-2.0:1 RADOME MATERIAL (INDOOR) ABS or Luran RADOME MATERIAL (OUTDOOR) Kydex 2 or Luran 2 1 Polarization axis is parallel to the cable axis, or along the long axis of the antenna for models without cable pigtails. 2 UV tolerance rated to 7 years of outdoor exposure. AZIMUTH PLANE cut perpendicular to the antenna and perpendicular to the cable ELEVATION PLANE cut perpendicular to the antenna along the cable axis OMNI PLANE Spherical Projection AZIMUTH PLANE cut perpendicular to the antenna and perpendicular to the cable ELEVATION PLANE cut perpendicular to the antenna along the cable axis OMNI PLANE cut perpendicular to the antenna along the cable axis TYPICAL WHISPER ANTENNA PATTERNS TYPICAL TERRACE ANTENNA PATTERNS Elevation Azimuth Centurion 2.4 GHz 3dBi (#94150) antenna Centurion 2.4 GHz 5dBi (#94149) antenna The reverse TNC connectors used to support the use of external 2.4GHz antennas are connected to the main circuit board in the radio via short coaxial cables shown in the photos below. Note that the hardware is in place to support external 5 GHz antennas; however the configuration software does not support use of external 5 GHz antennas. Currently, until authorized by the commission, configuring the radio to operate with external 5GHz antennas is not possible. These cables connect the main PCB to the external 2.4 GHz antenna connectors Cables used to connect the main PCB to the 2.4 GHz external antennas connectors 5GHz external antenna connector, in place, but not suppoorted by the configuration software.

External Photos

External Product Photos Airespace Virtual Access Point. Model: 1200 FCC Part 15.247 Certification Application Prepared by: David Waitt 202 Calvert Drive #217 Cupertino, Ca. 95014 [email protected] (408) 832 7053 110 Nortech Parkway San Jose, California, 95134 Airespace 1200, Side B Airespace 1200, Side A Airespace 1200, Alarm Indicators The 5GHz Reverse TNC External connector, (Currently not certified for use and disabled) and one of the reverse TNC external antenna connector for 2.4 GHz Airespace 1200, Bottom Airespace 1200, Top

ID Label/Location Info

To: Office of Engineering and Technology Federal Communications Commission 445 12TH ST SW Washington DC 20554 Re: FCC ID: QTZWNAP1200B Certification Application. Regulatory Compliance Label Drawing …

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Contact Information

Applicant

Bob Friday(Sr. Scientist)
[email protected]408-941-0500Fax: 408-941-0495

Technical Contact

ConsultantDavid Waitt
[email protected]408-832-7053

PO 64354 · Sunnyvale, California · United States

Non-Technical Contact

ConsultantDavid Waitt
[email protected]408-832-7053

Test Firm

Elliott Laboratories LLCDavid Bare
[email protected]408-245-7800Fax: 408-245-3499

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.41 GHz - 2.46 GHz35.00 mW
Confidentiality
Long Term
Grant Notes
Power output listed is conducted. The maximum output power on a channel adjacent to any band edge must be reduced as specified within this application. In order to comply with the integral antenna requirement, any external antennas may not operate within the 5.15-5.25 GHz UNII Band. The antenna(s) used for this transmitter must be installed to provide a separation distance of at least 20 cm from all persons and must not be colocated or operating in conjunction with any other antenna or transmitter. End users and installers must be provided with antenna installation instructions and transmitter operating conditions for satisfying RF exposure compliance.

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